JP2015205175A5 - - Google Patents

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JP2015205175A5
JP2015205175A5 JP2015075106A JP2015075106A JP2015205175A5 JP 2015205175 A5 JP2015205175 A5 JP 2015205175A5 JP 2015075106 A JP2015075106 A JP 2015075106A JP 2015075106 A JP2015075106 A JP 2015075106A JP 2015205175 A5 JP2015205175 A5 JP 2015205175A5
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fluid metering
depicts
metering system
pump cycle
stages
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JP2015075106A
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JP2015205175A (en
JP6649691B2 (en
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フルイディクス型流体定量サブシステムを含む本発明に従う注入ポンプの概 略全体図である。1 is a schematic overall view of an infusion pump according to the present invention including a fluidic fluid metering subsystem. FIG. 流体定量サブシステムの分解組立図である。FIG. 3 is an exploded view of a fluid metering subsystem. 本発明の例示の第1の実施例に従い組み立てられた注入ポンプの図である。1 is an infusion pump assembled in accordance with an exemplary first embodiment of the present invention. FIG. 組み立てられた流体定量システムの斜視図である。It is a perspective view of the assembled fluid fixed_quantity | quantitative_assay system. 図4における組み立てられた流体定量システムの側面の断面図である。FIG. 5 is a side cross-sectional view of the assembled fluid metering system in FIG. 4. ポンプサイクル開始前の初期状態で図4における組み立てられた流体定量 システムを示す上面図である。FIG. 5 is a top view showing the assembled fluid metering system in FIG. 4 in an initial state before the start of the pump cycle. 図6Aにおける初期状態の組み立てられた流体定量システムの側面の断面 図である。FIG. 6B is a side cross-sectional view of the assembled fluid metering system in the initial state of FIG. 6A. ポンプサイクルの吸入行程中で図4における組み立てられた流体定量シス テムを示す上面図である。FIG. 5 is a top view showing the assembled fluid metering system in FIG. 4 during the intake stroke of the pump cycle. 図7Aにおける状態で組み立てられた流体定量システムの側面の断面図で ある。It is sectional drawing of the side surface of the fluid fixed_quantity | assay system assembled in the state in FIG. 7A. ポンプサイクルの弁状態変化中で図4における組み立てられた流体定量シ ステムを示す上面図である。FIG. 5 is a top view of the assembled fluid metering system of FIG. 4 during a valve state change of the pump cycle. 図8Aにおける状態で組み立てられた流体定量システムの側面の断面図で ある。It is sectional drawing of the side surface of the fluid fixed_quantity | assay system assembled in the state in FIG. 8A. ポンプ容量が完全に増大した状態で図4における組み立てられた流体定量 システムを示す上面図である。FIG. 5 is a top view of the assembled fluid metering system in FIG. 4 with the pump capacity fully increased. 図9Aにおける状態で組み立てられた流体定量システムの側面の断面図で ある。It is sectional drawing of the side surface of the fluid fixed_quantity | assay system assembled in the state in FIG. 9A. ポンプサイクルの排出行程中で図4における組み立てられた流体定量シ ステムを示す上面図である。FIG. 5 is a top view of the assembled fluid metering system in FIG. 4 during the pump cycle discharge stroke. 図10Aにおける状態で組み立てられた流体定量システムを示す側面の 断面図である。FIG. 10B is a side cross-sectional view showing the fluid measurement system assembled in the state shown in FIG. 10A. ポンプサイクルの排出行程後に、ポンプ容量が完全に落ち、弁が変化し ている状態で図4における組み立てられた流体定量システムの上面図である。FIG. 5 is a top view of the assembled fluid metering system in FIG. 4 with the pump capacity completely reduced and the valves changing after the pump cycle exhaust stroke. 図11Aにおける状態で組み立てられた流体定量システムの側面の断面 図である。It is sectional drawing of the side surface of the fluid fixed_quantity | assay system assembled in the state in FIG. 11A. サイクルの開始点に戻された機構を示す図である。It is a figure which shows the mechanism returned to the starting point of the cycle. 図12Aに対応する断面図である。It is sectional drawing corresponding to FIG. 12A. 本発明の例示の第2の実施例に従う流体定量サブシステムの分解組立図で ある。FIG. 6 is an exploded view of a fluid metering subsystem according to a second exemplary embodiment of the present invention. 図13における実施例に従う流体定量サブシステムの組立図である。FIG. 14 is an assembly diagram of a fluid metering subsystem according to the embodiment in FIG. 13. ポンプサイクル開始前における図13の流体定量システムの側面の断面図 である。FIG. 14 is a side cross-sectional view of the fluid metering system of FIG. 13 before the start of the pump cycle. 図13における実施例に従う流体定量システムのポンプサイクルの段階を 描写する図である。FIG. 14 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 図13における実施例に従う流体定量システムのポンプサイクルの段階を 描写する図である。FIG. 14 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 図13における実施例に従う流体定量システムのポンプサイクルの段階を 描写する図である。FIG. 14 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 図13における実施例に従う流体定量システムのポンプサイクルの段階を 描写する図である。FIG. 14 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 図13における実施例に従う流体定量システムのポンプサイクルの段階を 描写する図である。FIG. 14 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 図13における実施例に従う流体定量システムのポンプサイクルの段階を 描写する図である。FIG. 14 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 本発明の例示の第3の実施例に従う流体定量サブシステムの分解組立図で ある。FIG. 6 is an exploded view of a fluid metering subsystem according to a third exemplary embodiment of the present invention. 図21における実施例の組立図である。It is an assembly drawing of the Example in FIG. 図21における実施例の側面の断面図である。It is sectional drawing of the side surface of the Example in FIG. 本発明の実施例に従うポンプサイクルの開始位置を描写する図である。FIG. 6 depicts a starting position of a pump cycle according to an embodiment of the present invention. 図24Aに対応する断面図である。It is sectional drawing corresponding to FIG. 24A. 図21における実施例に従う流体定量システムのポンプサイクルの段階 を描写する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment in FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 図21の実施例に従う流体定量システムのポンプサイクルの段階を描写 する図である。FIG. 22 depicts the stages of a pump cycle of a fluid metering system according to the embodiment of FIG. 本発明の例示の第4の実施例に従う流体定量サブシステムの分解組立図で ある。FIG. 6 is an exploded view of a fluid metering subsystem according to a fourth exemplary embodiment of the present invention. 図30における組み立てられた実施例を描写する図である。FIG. 31 depicts the assembled example in FIG. 30. 図30における実施例の側面の断面図である。It is sectional drawing of the side surface of the Example in FIG. 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 30 . 30における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 31 depicts the stages of the pump cycle of the fluid metering system according to the embodiment in FIG. 30 . 本発明の例示の第5の実施例に従う流体定量サブシステムの分解組立図である。FIG. 7 is an exploded view of a fluid metering subsystem according to a fifth exemplary embodiment of the present invention. 図40における実施例に従い組み立てられた流体定量システムの断面図である。FIG. 41 is a cross-sectional view of a fluid metering system assembled in accordance with the embodiment in FIG. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40. 図40における実施例に従う流体定量システムのポンプサイクルの段階を描写する図である。FIG. 41 depicts the stages of a pump cycle of a fluid metering system according to the example in FIG. 40.

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